Neural Response During a Mechanically Assisted Spinal Manipulation in an Animal Model: A Pilot Study

W. Reed, M. Liebschner, R. Sozio, J. Pickar, M. Gudavalli
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引用次数: 11

Abstract

Introduction Mechanoreceptor stimulation is theorized to contribute to the therapeutic efficacy of spinal manipulation. Use of mechanically-assisted spinal manipulation (MA-SM) devices is increasing among manual therapy clinicians worldwide. The purpose of this pilot study is to determine the feasibility of recording in vivo muscle spindle responses during a MA-SM in an intervertebral fixated animal model. Methods Intervertebral fixation was created by inserting facet screws through the left L5-6 and L6-7 facet joints of a cat spine. Three L6muscle spindle afferents with receptive fields in back muscles were isolated. Recordings were made during MA-SM thrusts delivered to the L7 spinous process using an instrumented Activator IV clinical device. Results Nine MA-SM thrusts were delivered with peak forces ranging from 68-122N and with thrust durations of less than 5ms. High frequency muscle spindle discharge occurred during MA-SM. Following the MA-SM, muscle spindle responses included returning to pre-manipulation levels, slightly decreasing for a short window of time, and greatly decreasing for more than 40s. Conclusion This study demonstrates that recording in vivo muscle spindle response using clinical MA-SM devices in an animal model is feasible. Extremely short duration MA-SM thrusts (<5ms) can have an immediate and/or a prolonged (> 40s) effect on muscle spindle discharge. Greater peak forces during MA-SM thrusts may not necessarily yield greater muscle spindle responses. Determining peripheral response during and following spinal manipulation may be an important step in optimizing its’ clinical efficacy. Future studies may investigate the effect of thrust dosage and magnitude.
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机械辅助脊柱操作动物模型中的神经反应:一项初步研究
机械感受器刺激被认为有助于脊柱操纵的治疗效果。机械辅助脊柱操作(MA-SM)装置的使用在世界范围内的手工治疗临床医生中越来越多。本初步研究的目的是确定在椎间固定动物模型中记录MA-SM期间体内肌纺锤体反应的可行性。方法通过猫脊柱左侧L5-6和L6-7小关节插入小关节面螺钉进行椎间固定。分离3个l6肌梭形传入神经与背部肌肉的接受野。在MA-SM推力传递到L7棘突时,使用仪器化的Activator IV临床装置进行记录。结果9次MA-SM推力的峰值力在68 ~ 122n之间,推力持续时间小于5ms。在MA-SM过程中出现了高频率的肌主轴放电。MA-SM后,肌肉纺锤体反应包括恢复到操作前水平,在短时间内略有下降,超过40秒后显著下降。结论在动物模型上使用临床MA-SM装置记录体内肌梭反应是可行的。极短持续时间MA-SM推力(40s)对肌肉主轴放电的影响。在MA-SM推力过程中,更大的峰值力不一定会产生更大的肌梭反应。确定脊柱操作期间和之后的外周反应可能是优化其临床疗效的重要步骤。未来的研究可能会探讨推力剂量和大小的影响。
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